Zeng Haoyu, Lozinskaya Irina M, Lin Zuojun, Willette Robert N, Brooks David P, Xu Xiaoping
GlaxoSmithKline, 709 Swedeland Rd., UW2511, P.O. Box 1539, King of Prussia, PA 19406, USA.
J Pharmacol Exp Ther. 2006 Nov;319(2):957-62. doi: 10.1124/jpet.106.110593. Epub 2006 Aug 23.
Human ether-a-go-go-related gene (hERG) encodes a rapidly activating delayed rectifier potassium channel that plays important roles in cardiac action potential repolarization. Although many drugs and compounds block hERG channels, activators of the channel have only recently been described. Three structurally diverse synthetic compounds have been reported to activate hERG channels by altering deactivation or inactivation or by unidentified mechanisms. Here, we describe a novel, naturally occurring hERG channel activator, mallotoxin (MTX). The effects of MTX on hERG channels were investigated using the patch-clamp technique. MTX increased both step and tail hERG currents with EC(50) values of 0.34 and 0.52 microM, respectively. MTX leftward shifted the voltage dependence of hERG channel activation to less depolarized voltages ( approximately 24 mV at 2.5 microM). In addition, MTX increased hERG deactivation time constants. MTX did not change the half-maximal inactivation voltage of the hERG channel, but it reduced the slope of the voltage-dependent inactivation curve. All of these factors contribute to the enhanced activity of hERG channels. During a voltage-clamp protocol using prerecorded cardiac action potentials, 2.5 microM MTX increased the total potassium ions passed through hERG channels by approximately 5-fold. In conclusion, MTX activates hERG channels through distinct mechanisms and with significantly higher potency than previously reported hERG channel activators.
人醚 - 去极化相关基因(hERG)编码一种快速激活的延迟整流钾通道,该通道在心脏动作电位复极化过程中发挥重要作用。尽管许多药物和化合物会阻断hERG通道,但直到最近才报道了该通道的激活剂。据报道,三种结构不同的合成化合物可通过改变失活或去激活过程或通过未知机制来激活hERG通道。在此,我们描述了一种新型的天然存在的hERG通道激活剂,大戟毒素(MTX)。使用膜片钳技术研究了MTX对hERG通道的影响。MTX增加了阶跃电流和尾电流,其半数有效浓度(EC50)值分别为0.34和0.52微摩尔。MTX使hERG通道激活的电压依赖性向左移至去极化程度较小的电压(在2.5微摩尔时约为24毫伏)。此外,MTX增加了hERG的去激活时间常数。MTX没有改变hERG通道的半数最大失活电压,但降低了电压依赖性失活曲线的斜率。所有这些因素都有助于增强hERG通道的活性。在使用预先记录的心脏动作电位的电压钳实验中,2.5微摩尔的MTX使通过hERG通道的总钾离子增加了约5倍。总之,MTX通过独特的机制激活hERG通道,且效力显著高于先前报道的hERG通道激活剂。